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用于微血管多普勒成像的回顾性发射波束形成与相干平面波合成:一项比较研究

Retrospective Transmit Beamforming and Coherent Plane-Wave Compounding for Microvascular Doppler Imaging: A Comparison Study.

作者信息

Golfetto Cristiana, Ekroll Ingvild Kinn, Torp Hans, Lovstakken Lasse, Avdal Jorgen

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2021 Apr;68(4):1105-1116. doi: 10.1109/TUFFC.2020.3033719. Epub 2021 Mar 26.

Abstract

Imaging blood flow in small vessels is of great clinical value for evaluating increased vascularization, potentially related to angiogenesis in cancer or inflammation processes in musculoskeletal disease. Using a traditional duplex imaging approach, a major challenge in color Doppler imaging is the limited amount of samples available for clutter filtering. Coherent plane-wave compounding (CPWC) enables a continuous high frame rate acquisition and improved image quality due to dynamic transmit focusing. However, the presence of moving scatterers in the image can lead to a loss in signal-to-noise ratio (SNR) and contrast. In this study, typical CPWC sequences for low-flow imaging were compared with retrospective transmit beamforming (RTB) sequences with similar frame rates and transmit power. The comparison was based on resolution, contrast, and SNR, using a stationary phantom, a flow phantom, a thread phantom, and in vivo recordings of blood vessels in the thyroid and kidney. A model was developed to estimate the difference in SNR between RTB and CPWC in the presence of static and moving scatterers while varying the transmit sequence parameters. The model predicted that RTB may yield an increased SNR compared with CPWC, especially for flow imaging, where the SNR difference reached 6 dB for a maximum velocity of 15 cm/s. The measured SNR values were in agreement with the predicted values, both in the case of stationary scatterers and for the flow phantom. We further demonstrated that reducing beam density to increase frame rate is associated with spatial undersampling (stripe) artifacts for RTB and grating lobes for CPWC. Both phantom and in vivo results indicate that transmit focusing may be beneficial in a low-flow imaging setup that, combined with adaptive clutter filtering, can yield superior microvascular imaging.

摘要

对小血管内血流进行成像对于评估血管生成增加具有重要的临床价值,这可能与癌症中的血管生成或肌肉骨骼疾病中的炎症过程有关。使用传统的双功成像方法时,彩色多普勒成像的一个主要挑战是可用于杂波滤波的样本数量有限。相干平面波复合(CPWC)能够实现连续的高帧率采集,并由于动态发射聚焦而提高图像质量。然而,图像中移动散射体的存在会导致信噪比(SNR)和对比度下降。在本研究中,将用于低血流成像的典型CPWC序列与具有相似帧率和发射功率的回顾性发射波束形成(RTB)序列进行了比较。该比较基于分辨率、对比度和SNR,使用了静态体模、血流体模、丝线体模以及甲状腺和肾脏血管的体内记录。开发了一个模型来估计在存在静态和移动散射体的情况下,RTB和CPWC之间SNR的差异,同时改变发射序列参数。该模型预测,与CPWC相比,RTB可能会产生更高的SNR,特别是对于血流成像,当最大速度为15 cm/s时,SNR差异达到6 dB。在静态散射体和血流体模的情况下,测量的SNR值与预测值一致。我们进一步证明,降低波束密度以提高帧率会导致RTB出现空间欠采样(条纹)伪像,CPWC出现栅瓣伪像。体模和体内结果均表明,发射聚焦在低血流成像设置中可能是有益的,结合自适应杂波滤波,可以产生 superior 的微血管成像。 (注:“superior”此处结合语境可能是“更好的、更优越的”意思,但原文表述不太准确,可能是想表达“更好的微血管成像效果”之类的意思。)

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